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首页> 外文期刊>Chemistry: A European journal >Far-Red Emitting Fluorescent Dyes for Optical Nanoscopy: Fluorinated Silicon-Rhodamines (SiRF Dyes) and Phosphorylated Oxazines
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Far-Red Emitting Fluorescent Dyes for Optical Nanoscopy: Fluorinated Silicon-Rhodamines (SiRF Dyes) and Phosphorylated Oxazines

机译:用于光学纳米技术的远红光荧光染料:氟化硅罗丹明胺(SiRF染料)和磷酸化恶嗪

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摘要

Far-red emitting fluorescent dyes for optical microscopy, stimulated emission depletion (STED), and ground-state depletion (GSDIM) super-resolution microscopy are presented. Fluorinated silicon-rhodamines (SiRF dyes) and phosphorylated oxazines have absorption and emission maxima at about approximate to 660 and 680nm, respectively, possess high photostability, and large fluorescence quantum yields in water. A high-yielding synthetic path to introduce three aromatic fluorine atoms and unconventional conjugation/solubilization spacers into the scaffold of a silicon-rhodamine is described. The bathochromic shift in SiRF dyes is achieved without additional fused rings or double bonds. As a result, the molecular size and molecular mass stay quite small (<600Da). The use of the =800nm STED beam instead of the commonly used one at =750-775nm provides excellent imaging performance and suppresses re-excitation of SiRF and the oxazine dyes. The photophysical properties and immunofluorescence imaging performance of these new far-red emitting dyes (photobleaching, optical resolution, and switch-off behavior) are discussed in detail and compared with those of some well-established fluorophores with similar spectral properties.
机译:提出了用于光学显微镜,受激发射损耗(STED)和基态损耗(GSDIM)超分辨率显微镜的远红光发射荧光染料。氟化的罗丹明胺(SiRF染料)和磷酸化的恶嗪在大约660和680nm处具有最大吸收和发射最大值,在水中具有较高的光稳定性和较大的荧光量子产率。描述了将三个芳族氟原子和非常规的共轭/增溶间隔基引入到硅罗丹明的支架中的高产率合成途径。无需额外的稠环或双键即可实现SiRF染料的红移。结果,分子大小和分子量保持很小(<600Da)。使用= 800nm STED光束代替通常使用的= 750-775nm光束可以提供出色的成像性能,并抑制了SiRF和恶嗪染料的再激发。详细讨论了这些新的远红光发射染料的光物理性质和免疫荧光成像性能(光漂白,光学分辨率和关闭行为),并将其与一些具有类似光谱特性的成熟荧光团进行了比较。

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